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通过点击化学实现聚酰胺核酸寡聚物的“四向”二茂铁标记。

"Four-potential" ferrocene labeling of PNA oligomers via click chemistry.

机构信息

Lehrstuhl für Anorganische Chemie I-Bioanorganische Chemie, Fakultät für Chemie und Biochemie, Ruhr-Universität Bochum, Bochum, Germany.

出版信息

Bioconjug Chem. 2009 Aug 19;20(8):1578-86. doi: 10.1021/bc9001272. Epub 2009 Jul 8.

Abstract

The scope of the Cu(I)-catalyzed [2 + 3] azide/alkyne cycloaddition (CuAAC, click chemistry) as a key reaction for the conjugation of ferrocene derivatives to N-terminal functionalized PNA oligomers is explored herein (PNA: peptide nucleic acid). The facile solid-phase synthesis of N-terminal azide or alkyne-functionalized PNA oligomer precursors and their cycloaddition with azidoferrocene, ethynylferrocene, and N-(3-ethylpent-1-yn-3-yl)ferrocene-carboxamide (DEPA-ferrocene) on the solid phase are presented. While the click reaction with azidomethylferrocene worked equally well, the ferrocenylmethyl group is lost from the conjugate upon acid cleavage. However, the desired product was obtained via a post-SPPS conversion of the alkyne-PNA oligomer with azidomethylferrocene in solution. The synthesis of all ferrocene-PNA conjugates (trimer t(3)-PNA, 3, 4, 5, 6; 12mer PNA, 10 - t c t a c a a g a c t c, 11 - t c t a c c g t a c t c) succeeded with excellent yields and purities, as determined by mass spectrometry and HPLC. Electrochemical studies of the trimer Fc-PNA conjugates 3, 4, 5, and 6 with four different ferrocene moieties revealed quasi-reversible redox processes of the ferrocenyl redox couple Fc(0/+) and electrochemical half-wave potentials in a range of E(1/2) = -20 mV to +270 mV vs FcH(0/+) (Fc: ferrocenyl, C(10)H(9)Fe). The observed potential differences ΔE(1/2)(min) are always greater than 60 mV for any given pair of Fc-PNA conjugates, thus allowing a reliable differentiation with sensitive electrochemical methods like e.g. square wave voltammetry (SWV). This is the electrochemical equivalent of "four-color" detection and is hence denoted "four-potential" labeling. Preparation and electrochemical investigation of the set of four structurally different and electrochemically distinguishable ferrocenyl groups conjugated to PNA oligomers, as exemplified by the conjugates 3, 4, 5, and 6, demonstrates the scope of the azide/alkyne cycloaddition for the labeling of PNA with electrochemically active ferrocenyl groups. Furthermore, it provides a PNA-based system for the electrochemical detection of single-nucleotide polymorphism (SNP) in DNA/RNA.

摘要

本文探索了铜(I)催化的[2 + 3]叠氮化物/炔烃环加成(CuAAC,点击化学)作为将二茂铁衍生物与 N 末端官能化的 PN A 寡聚物连接的关键反应的范围(PN A:肽核酸)。本文介绍了 N 末端叠氮化物或炔基官能化的 PN A 寡聚物前体的简便固相合成及其与叠氮二茂铁、乙炔二茂铁和 N-(3-乙基戊-1-yn-3-基)二茂铁-酰胺(DEPA-二茂铁)在固相上的环加成。尽管与叠氮甲基二茂铁的点击反应同样有效,但在酸裂解时,共轭物中失去了二茂铁甲基。然而,通过在溶液中二茂铁炔基-PN A 寡聚物与叠氮甲基二茂铁的后续固相后合成,可以得到所需的产物。所有二茂铁-PN A 缀合物(三聚体 t(3)-PN A,3、4、5、6;12mer PN A,10 - t c t a c a a g a c t c,11 - t c t a c c g t a c t c)的合成均获得了优异的产率和纯度,这是通过质谱和 HPLC 确定的。带有四个不同二茂铁部分的三聚体 Fc-PN A 缀合物 3、4、5 和 6 的电化学研究表明,二茂铁电化学偶对 Fc(0/+)的准可逆氧化还原过程和电化学半波电位在 E(1/2) = -20 mV 至+270 mV 范围内 vs FcH(0/+)(Fc:二茂铁基,C(10)H(9)Fe)。观察到的电位差ΔE(1/2)(min)对于任何给定的 Fc-PN A 缀合物对总是大于 60 mV,因此可以使用敏感的电化学方法(例如方波伏安法(SWV))可靠地区分。这相当于电化学“四色”检测,因此被称为“四电位”标记。带有四个结构不同且电化学可区分的二茂铁基团的 PN A 寡聚物缀合物的制备和电化学研究,如缀合物 3、4、5 和 6 所示,证明了叠氮化物/炔烃环加成在 PN A 与电化学活性二茂铁基团标记方面的范围。此外,它还提供了基于 PN A 的系统,用于电化学检测 DNA/RNA 中的单核苷酸多态性(SNP)。

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